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Exploiting point source approximation on detailed neuronal models to reconstruct single neuron electric field and population LFP

机译:利用详细神经元模型上的点源近似来重建单个神经元电场和种群LFP

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Extracellular electrodes record local field potential as an average response from the neurons within the vicinity of the electrode. Here, we used neuronal models and point source approximation techniques to study the compartmental contribution of single neuron LFP and the attenuation properties of extracellular medium. Cable compartmental contribution of single neuron LFP was estimated by computing electric potential generated by localized ion channels. We simulated the electric potential generated from axon-hillock region contributed significantly to the single neuron extracellular field. Models of cerebellar granule neuron and L5 pyramidal neuron were used to study single neuron extracellular field potentials. Attenuation properties of the extracellular medium were studied via the granule cell model. A computational model of a rat Crus-IIa cerebellar granular layer, built with detailed anatomical and physiological properties allowed reconstructing population LFP. As with single neurons, the same technique was able to reconstruct the T and C waves of evoked postsynaptic in vivo LFP trace. In addition to role of attenuation on the width of signals, plasticity was simulated via modifications of intrinsic properties of underlying neurons and population LFP validated experimental data correlating network function to underlying single neuron activity.
机译:细胞外电极记录局部电场电势,作为电极附近神经元的平均响应。在这里,我们使用神经元模型和点源近似技术来研究单个神经元LFP的区室贡献和细胞外培养基的衰减特性。通过计算局部离子通道产生的电势来估计单个神经元LFP的电缆区室贡献。我们模拟了轴突-丘陵地区产生的电势对单个神经元细胞外领域作出了重大贡献。小脑颗粒神经元和L5锥体神经元的模型用于研究单神经元细胞外场的潜力。通过颗粒细胞模型研究了细胞外培养基的衰减特性。建立具有详细解剖和生理特性的大鼠Crus-IIa小脑颗粒层的计算模型可以重建种群LFP。与单个神经元一样,相同的技术也能够重建体内突触后LFP痕迹诱发的T波和C波。除了衰减对信号宽度的作用外,还通过修改基础神经元的内在属性和群体LFP验证的实验数据(将网络功能与基础单个神经元活动相关联)来模拟可塑性。

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